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Temporal Variations of Seismic Wave Velocity Associated with 1998 M6.1 Shizukuishi Earthquake

机译:1998年Shi石M6.1级地震与地震波速度的时空变化

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We attempt to detect temporal variations of seismic wave velocity before and after 1998 M6.1 Shizukuishi, northeastern Japan, earthquake by using waveform data from explosions and earthquake doublets spanning the period immediately before and after the earthquake. Direct P waves of the second explosion are delayed by ~20 ms at observation stations with epicentral distances less than 15 km. This tendency does not change if the analysis frequency band is changed. Our result suggests that the P-wave velocity decreased by at least 1% in the extremely shallow region of the hanging wall of the M6.1 thrust event after its occurrence. On the other hand, there was the frequency dependence of the coda wave delays for both artificial sources and for natural events. At 5-10 Hz, immediate sharp increases by more than 20 ms in time delays and lower coherency were observed at several stations. We estimated the region in which P-wave velocity might have decreased after the M6.1 earthquake. Maximum depth of the region is 13 km. The region includes the aftershock area of the M6.1 earthquake, but is eccentric to the earthquake in the west. Considering the frequency band analyzed (5-10 Hz), the scale of the spatial inhomogeneity which led to the coda wave delay is several hundreds meters. We investigated candidates for the cause of the direct P-wave and coda wave delay. Observed direct P-wave delay can be partly explained by the stress changes caused by coseismic fault slip. However, the coda wave delay cannot be explained by the stress changes that are limited to the superficial area. Crustal heterogeneity should have changed at coseismic time in the deeper area where aftershocks of the M6.1 earthquake occurred.
机译:我们试图通过利用地震前后前后两次爆炸和两次地震的波形数据来检测1998年日本东北Shi石M6.1地震前后的地震波速度的时空变化。在震中距离小于15 km的观测站,第二次爆炸的直接P波被延迟了约20 ms。如果改变分析频带,则这种趋势不会改变。我们的结果表明,M6.1推力事件发生后,在悬挂壁的极浅区域,P波速度至少降低了1%。另一方面,对于人工来源和自然事件,尾波延迟都与频率有关。在5-10 Hz时,在几个站点上观察到时间延迟立即急剧增加超过20 ms,并且相干性降低。我们估算了M6.1地震后P波速度可能下降的区域。该区域的最大深度为13公里。该地区包括M6.1地震的余震区,但偏向于西部的地震。考虑到所分析的频带(5-10 Hz),导致尾波延迟的空间不均匀度为数百米。我们调查了直接P波和尾波延迟的原因。观测到的直接P波延迟可以部分解释为同震断层滑动引起的应力变化。但是,尾波延迟不能用限于表面区域的应力变化来解释。在发生M6.1地震余震的深部地区,同震时地壳异质性应该发生了变化。

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